生物降解
木质素
超分子化学
离子液体
漆酶
催化作用
化学
嗜热菌
有机化学
组合化学
酶
分子
作者
Yuanxi Liu,Yan Li,Haifeng Wu,Shichao Xu,Baoli Zhang,Shan Li,Ruikai Du,Minquan Jiang,Ziman Chen,Yongqin Lv,Sheng Wang
出处
期刊:Nano Letters
[American Chemical Society]
日期:2024-02-15
卷期号:24 (8): 2520-2528
被引量:1
标识
DOI:10.1021/acs.nanolett.3c04505
摘要
Enzymatic catalysis presents an eco-friendly, energy-efficient method for lignin degradation. However, challenges arise due to the inherent incompatibility between enzymes and native lignin. In this work, we introduce a supramolecular catalyst composed of fluorenyl-modified amino acids and Cu2+, designed based on the aromatic stacking of the fluorenyl group, which can operate in ionic liquid environments suitable for the dissolution of native lignin. Amino acids and halide anions of ionic liquids shape the copper site's coordination sphere, showcasing remarkable catechol oxidase-mimetic activity. The catalyst exhibits thermophilic property, and maintains oxidative activity up to 75 °C, which allows the catalyzed degradation of the as-dissolved native lignin with high efficiency even without assistance of the electron mediator. In contrast, at this condition, the native copper-dependent oxidase completely lost its activity. This catalyst with superior stability and activity offer promise for sustainable lignin valorization through biocatalytic routes compatible with ionic liquid pretreatment, addressing limitations in native enzymes for industrially relevant conditions.
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